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在金属抗性嗜麦芽窄食单胞菌CH34中捕获的质粒:定义广宿主范围质粒的PromA家族。

Plasmids captured in C. metallidurans CH34: defining the PromA family of broad-host-range plasmids.

作者信息

Van der Auwera Géraldine A, Król Jaroslaw E, Suzuki Haruo, Foster Brian, Van Houdt Rob, Brown Celeste J, Mergeay Max, Top Eva M

机构信息

Department of Microbiology and Molecular Genetics, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Antonie Van Leeuwenhoek. 2009 Aug;96(2):193-204. doi: 10.1007/s10482-009-9316-9. Epub 2009 Mar 4.

Abstract

The self-transmissible, broad-host-range (BHR) plasmid pMOL98 was previously isolated from polluted soil using a triparental plasmid capture approach and shown to possess a replicon similar to that of the BHR plasmids pSB102 and pIPO2. Here, complete sequence analysis and comparative genomics reveal that the 55.5 kb nucleotide sequence of pMOL98 shows extensive sequence similarity and synteny with the BHR plasmid family that now includes pIPO2, pSB102, pTER331, and pMRAD02. They share a plasmid backbone comprising replication, partitioning and conjugative transfer functions. Comparison of the variable accessory regions of these plasmids shows that the majority of natural transposons, as well as the mini-transposon used to mark the plasmids, are inserted in the parA locus. The transposon unique to pMOL98 appears to have inserted from the chromosome of the recipient strain used in the plasmid capture procedure. This demonstrates the necessity for careful screening of plasmids and host chromosomes to avoid mis-interpretation of plasmid genome content. The presence of very similar BHR plasmids with different accessory genes in geographically distinct locations suggests an important role in horizontal gene exchange and bacterial adaptation for this recently defined plasmid group, which we propose to name "PromA".

摘要

自我传递的广宿主范围(BHR)质粒pMOL98先前是通过三亲本质粒捕获方法从污染土壤中分离得到的,并显示其拥有与BHR质粒pSB102和pIPO2相似的复制子。在此,完整序列分析和比较基因组学表明,pMOL98的55.5 kb核苷酸序列与现在包括pIPO2、pSB102、pTER331和pMRAD02的BHR质粒家族显示出广泛的序列相似性和共线性。它们共享一个包含复制、分配和接合转移功能的质粒骨架。对这些质粒可变辅助区域的比较表明,大多数天然转座子以及用于标记质粒的微型转座子都插入到了parA基因座中。pMOL98特有的转座子似乎是从质粒捕获过程中使用的受体菌株的染色体插入的。这证明了仔细筛选质粒和宿主染色体以避免对质粒基因组内容的错误解读的必要性。在地理上不同的位置存在具有不同辅助基因的非常相似的BHR质粒,这表明这个最近定义的质粒组在水平基因交换和细菌适应中起重要作用,我们建议将其命名为“PromA”。

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